The internal Faraday screen of Sagittarius A*
Maciek Wielgus, Sara Issaoun, Ivan Marti-Vidal, Razieh Emami, Monika, Moscibrodzka, Christiaan D. Brinkerink, Ciriaco Goddi, and Ed Fomalont

TL;DR
This study uses high-cadence ALMA observations of Sagittarius A* to measure polarization and rotation measure, revealing an internal Faraday screen within 10 gravitational radii and providing insights into the accretion flow's magnetic structure.
Contribution
It provides the first detailed measurements of polarization and rotation measure variability, demonstrating an internal Faraday screen in Sgr A* and reconciling observations with accretion flow models.
Findings
Inner Faraday screen is largely internal to Sgr A*
Rotation measure varies rapidly and differs between frequencies
Magnetic field structure appears coherent and persistent
Abstract
We report on 85-101 GHz light curves of the Galactic Center supermassive black hole, Sagittarius A* (Sgr A*), observed in April 2017 with the Atacama Large Millimeter/submillimeter Array (ALMA). This study of high-cadence full-Stokes data provides new measurements of the fractional linear polarization at a 1-2% level resolved in 4 s time segments, and stringent upper limits on the fractional circular polarization at 0.3%. We compare these findings to ALMA light curves of Sgr A* at 212-230 GHz observed three days later, characterizing a steep depolarization of the source at frequencies below about 150 GHz. We obtain time-dependent rotation measure (RM) measurements, with the mean RM at 85-101 GHz being a factor of two lower than that at 212-230 GHz. Together with the rapid temporal variability of the RM and its different statistical characteristics in both frequency bands, these results…
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Taxonomy
TopicsAstrophysical Phenomena and Observations
